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Experimental analysis of solar energy harvesting circuits efficiency for low power applications

机译:低功耗应用中太阳能收集电路效率的实验分析

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This work presents an analysis on efficiency of solar energy harvesting circuits focused on low power, low voltage sensor platforms. Two different approaches were tested in order to operate a solar panel closely to its maximum power point. The first circuit precisely matches the solar cells with the batteries. The second one is based on a Maximum Power Point Tracker (MPPT) chip. The paper addresses the circuits' design and evaluation. Two tests were performed outdoors, under two different irradiance conditions. Although the MPPT chip may be efficient for a variety of low power devices, experiments have shown that it did not extract more energy from the environment than the directly coupled circuit. A mathematical energy consumption analysis shows that, in both cases, the directly coupled circuit is more efficient. Therefore, this work shows that there is still a lack of industry solutions for low power, low voltage, solar harvesting circuits. (C) 2014 Elsevier Ltd. All rights reserved.
机译:这项工作对以低功率,低压传感器平台为重点的太阳能收集电路的效率进行了分析。为了使太阳能电池板接近其最大功率点,对两种不同的方法进行了测试。第一电路使太阳能电池与电池精确匹配。第二个基于最大功率点跟踪器(MPPT)芯片。该论文讨论了电路的设计和评估。在两个不同的辐照条件下,在室外进行了两次测试。尽管MPPT芯片对于多种低功耗设备可能是有效的,但实验表明,与直接耦合电路相比,MPPT不会从环境中提取更多的能量。数学能耗分析表明,在两种情况下,直接耦合电路均更为有效。因此,这项工作表明,对于低功率,低压,太阳能收集电路,仍然缺乏工业解决方案。 (C)2014 Elsevier Ltd.保留所有权利。

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